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    • 41. 发明申请
    • IMPLEMENTING A PROTOCOL ADAPTATION LAYER OVER AN INTERNET PROTOCOL
    • 通过互联网协议实施协议适配层
    • US20140219291A1
    • 2014-08-07
    • US13995650
    • 2011-12-22
    • Guoqing LiCarlos CordeiroBahareh SadeghiAli S. Sadri
    • Guoqing LiCarlos CordeiroBahareh SadeghiAli S. Sadri
    • H04L29/06
    • H04L69/08H04L69/168H04L69/169H04W80/04H04W80/06
    • A system and method are provided that allow WiGig protocol adaptation layers (PALs) to operate differently from the proposed WiGig standard on top of an Internet protocol (IP) layer in order to enhance routing options for communication of the data traffic between a transmitting (source) device and a receiving (sink) device. A layering architecture is provided that allows WiGig PALs, such as WDE, to operate on top of an IP layer. A signaling mechanism is also provided that allows a negotiation, or at least an indication, of the underlying layering structure for specific data communications. Recognizing that the next generation wireless display requires technology such as WiGig WDE to support the driving demand for a cable replacement user experience and richer wireless display use cases, this PAL over IP architecture optimizes alignment of the WiGig data communication technology with other data communication technologies.
    • 提供一种系统和方法,其允许WiGig协议适配层(PAL)与互联网协议(IP)层之上的所提出的WiGig标准不同地运行,以便增强用于在发送(源) )设备和接收(接收)设备。 提供了一种分层架构,允许WiGig PAL(如WDE)在IP层之上运行。 还提供了一种信令机制,其允许用于特定数据通信的基础分层结构的协商或至少指示。 认识到下一代无线显示器需要诸如WiGig WDE之类的技术来支持电缆更换用户体验的驱动需求和更丰富的无线显示用例,该PAL over IP架构优化了WiGig数据通信技术与其他数据通信技术的对准。
    • 45. 发明授权
    • Implementing a protocol adaptation layer over an internet protocol
    • 通过互联网协议实现协议适配层
    • US09219801B2
    • 2015-12-22
    • US13995650
    • 2011-12-22
    • Guoqing LiCarlos CordeiroBahareh SadeghiAli S. Sadri
    • Guoqing LiCarlos CordeiroBahareh SadeghiAli S. Sadri
    • H04L29/06H04W80/04H04W80/06
    • H04L69/08H04L69/168H04L69/169H04W80/04H04W80/06
    • A system and method are provided that allow WiGig protocol adaptation layers (PALs) to operate differently from the proposed WiGig standard on top of an Internet protocol (IP) layer in order to enhance routing options for communication of the data traffic between a transmitting (source) device and a receiving (sink) device. A layering architecture is provided that allows WiGig PALs, such as WDE, to operate on top of an IP layer. A signaling mechanism is also provided that allows a negotiation, or at least an indication, of the underlying layering structure for specific data communications. Recognizing that the next generation wireless display requires technology such as WiGig WDE to support the driving demand for a cable replacement user experience and richer wireless display use cases, this PAL over IP architecture optimizes alignment of the WiGig data communication technology with other data communication technologies.
    • 提供一种系统和方法,其允许WiGig协议适配层(PAL)与互联网协议(IP)层之上的所提出的WiGig标准不同地运行,以便增强用于在发送(源) )设备和接收(接收)设备。 提供了一种分层架构,允许WiGig PAL(如WDE)在IP层之上运行。 还提供了一种信令机制,其允许用于特定数据通信的基础分层结构的协商或至少指示。 认识到下一代无线显示器需要诸如WiGig WDE之类的技术来支持电缆更换用户体验的驱动需求和更丰富的无线显示用例,该PAL over IP架构优化了WiGig数据通信技术与其他数据通信技术的对准。
    • 47. 发明申请
    • APPARATUS, SYSTEM AND METHOD OF ESTABLISHING A WIRELESS BEAMFORMED LINK
    • 建立无线BEAMFORMED链路的装置,系统和方法
    • US20140206406A1
    • 2014-07-24
    • US13870085
    • 2013-04-25
    • Carlos CordeiroBahareh SadeghiAlexander MaltsevVadim Sergeyev
    • Carlos CordeiroBahareh SadeghiAlexander MaltsevVadim Sergeyev
    • H04W72/04
    • H04W72/0453H04B7/0617H04B7/0619H04W72/0413H04W72/046H04W88/06H04W88/08
    • Some demonstrative embodiments include devices, systems and/or methods of establishing a wireless beamformed link. For example, an apparatus may include a wireless communication controller to control a first wireless communication device to communicate millimeter-wave (mmWave) signals with a second wireless communication device over a mmWave frequency band, the mmWave signals including signals transmitted according to a plurality of different transmit (Tx) beamforming settings, the wireless communication controller is to control the first wireless communication device to communicate feedback information, which is based on the mmWave signals, over a non-mmWave frequency band, and to control the first wireless communication device to establish with the second wireless communication device a beamformed link over the mmWave frequency band, the beamformed link using a Tx beamforming setting, which is determined based on the feedback information.
    • 一些演示实施例包括建立无线波束形成链路的设备,系统和/或方法。 例如,设备可以包括无线通信控制器,用于控制第一无线通信设备,以在mmWave频带上与第二无线通信设备通信毫米波(mmWave)信号,所述mmWave信号包括根据多个 不同的发送(Tx)波束形成设置,无线通信控制器将控制第一无线通信设备通过非mm波频率传送基于mmWave信号的反馈信息,并且控制第一无线通信设备 与第二无线通信设备建立在mmWave频带上的波束形成的链路,使用基于反馈信息确定的Tx波束成形设置的波束形成链路。
    • 49. 发明申请
    • IMPLEMENTING AN ASSISTED CROSS-PROTOCOL ADAPTATION LAYER/CROSS-LAYER CLOCK SYNCHRONIZATION SCHEME
    • 实施协助交叉协议适配层/跨层时钟同步方案
    • US20140233556A1
    • 2014-08-21
    • US13995690
    • 2011-12-22
    • Guoqing LiBahareh SadeghiCarlos Cordeiro
    • Guoqing LiBahareh SadeghiCarlos Cordeiro
    • H04W56/00
    • H04W56/001H04W56/0035
    • A system and method are provided to streamline at least a clock synchronization process for subsequent WiGig PALs once clocks in a first WiGig PAL transmitter and a corresponding first WiGig PAL receiver are synchronized. The unique layering structure of the WiGig 60 GHz standard affords an opportunity to streamline the clock synchronization process based on relationships between individual WiGig PALs, and that the WiGig PALs are directly on top of the WiGig MAC and PHY layers. A process for assisted cross-PAL/cross-layer clock synchronization affords significant reductions in an amount of time required to synchronize the clocks of multiple WiGig PALs based on leveraging an already synchronized clock pair in a first WiGig PAL transmitter/receiver pair to facilitate the clock synchronization of one or more subsequent WiGig PAL transmitter/receiver pairs.
    • 提供了一种系统和方法,用于在第一WiGig PAL发射机和对应的第一WiGig PAL接收机同步时,一次时钟后续的WiGig PAL的至少一个时钟同步过程。 WiGig 60 GHz标准的独特分层结构提供了一种基于各个WiGig PAL之间的关系简化时钟同步过程的机会,WiGig PAL直接位于WiGig MAC和PHY层之上。 基于在第一WiGig PAL发射机/接收机对中利用已经同步的时钟对,辅助的跨PAL /跨层时钟同步的过程提供了使多个WiGig PAL的时钟同步所需的时间量的显着减少,以便于 一个或多个后续WiGig PAL发射机/接收机对的时钟同步。